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NOAA JPSS Visible Infrared Imaging Radiometer Suite (VIIRS) Aerosol Optical Thickness (AOT) and Aerosol Particle Size Parameter (APSP) Environmental Data Record (EDR) from IDPS

This dataset contains a high quality operational Environmental Data Record (EDR) of Aerosol Optical Thickness (AOT) from the Visible Infrared Imaging Radiometer Suite (VIIRS) instrument onboard the Suomi-NPP satellite and is produced by the NOAA Environmental Satellite, Data, and Information Service (NESDIS). The algorithm that is used to derive the VIIRS AOT is based on an algorithm originally developed for the Moderate Resolution Imaging Spectroradiometer (MODIS) sensor but is adapted and improved upon for use by VIIRS. The algorithm utilizes eleven different spectral bands ranging from 0.412 to 2.250 microns as well as the Angstrom Exponent to calculate values stored as 96 x 400 arrays of 16-bit integers with a matching scale stored in each granule. The spatial resolution is 6 kilometers (km) which is derived from an intermediate product (IP) of 8 x 8 750 meter pixels. The temporal resolution provides global coverage daily. By default, IDPS VIIRS AOT data obtained from the Comprehensive Large-Array Stewardship System (CLASS) are distributed in four 86-second granules in Hierarchical Data Format v.5 (HDF5) with metadata attributes included. It is important to note that the Aerosol Particle Size Parameter (APSP) is included in this EDR and is reported as Ångström exponent.

About this Dataset

Updated: 2024-02-22
Metadata Last Updated: 2025-11-19T15:30:23.709Z
Date Created: N/A
Data Provided by:
Dataset Owner: N/A

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Title NOAA JPSS Visible Infrared Imaging Radiometer Suite (VIIRS) Aerosol Optical Thickness (AOT) and Aerosol Particle Size Parameter (APSP) Environmental Data Record (EDR) from IDPS
Description This dataset contains a high quality operational Environmental Data Record (EDR) of Aerosol Optical Thickness (AOT) from the Visible Infrared Imaging Radiometer Suite (VIIRS) instrument onboard the Suomi-NPP satellite and is produced by the NOAA Environmental Satellite, Data, and Information Service (NESDIS). The algorithm that is used to derive the VIIRS AOT is based on an algorithm originally developed for the Moderate Resolution Imaging Spectroradiometer (MODIS) sensor but is adapted and improved upon for use by VIIRS. The algorithm utilizes eleven different spectral bands ranging from 0.412 to 2.250 microns as well as the Angstrom Exponent to calculate values stored as 96 x 400 arrays of 16-bit integers with a matching scale stored in each granule. The spatial resolution is 6 kilometers (km) which is derived from an intermediate product (IP) of 8 x 8 750 meter pixels. The temporal resolution provides global coverage daily. By default, IDPS VIIRS AOT data obtained from the Comprehensive Large-Array Stewardship System (CLASS) are distributed in four 86-second granules in Hierarchical Data Format v.5 (HDF5) with metadata attributes included. It is important to note that the Aerosol Particle Size Parameter (APSP) is included in this EDR and is reported as Ångström exponent.
Modified 2025-11-19T15:30:23.709Z
Publisher Name N/A
Contact N/A
Keywords Earth Science > Atmosphere > Aerosols > Aerosol Optical Depth/Thickness > Angstrom Exponent , Atmospheric - Composition - Aerosol Properties , Geographic Region > Global , Vertical Location > Troposphere , JPSS > Joint Polar Satellite System , VIIRS > Visible-Infrared Imager-Radiometer Suite , SUOMI-NPP > Suomi National Polar-orbiting Partnership , 1 km - HTML Markup Was Removed , DOC/NOAA/NESDIS/NCDC > National Climatic Data Center, NESDIS, NOAA, U.S. Department of Commerce , DOC/NOAA/NESDIS/NCEI > National Centers for Environmental Information, NESDIS, NOAA, U.S. Department of Commerce , DOC/NOAA/NESDIS/STAR > Center for Satellite Applications and Research, NESDIS, NOAA, U.S. Department of Commerce , DOC/NOAA/NESDIS/OSPO > Office of Satellite and Product Operations, NESDIS, NOAA, U.S. Department of Commerce , gov.noaa.class:VIIRS_EDR , Atmosphere , Atmospheric Composition and Air Quality , climatologyMeteorologyAtmosphere
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